We present an in-depth investigation of Au nanoparticles self-assembled on a zigzag-like TiOx/Pt(111) ultrathin polar film, whose structure is known in great detail. The peculiar pattern of defects (picoholes) templates a linear array of size-selected (ca. 1 nm) Au nanoparticles without disruption of the titania layer, as observed by scanning tunneling microscopy. Their structure and electronic properties have been investigated by several large-area spectroscopic tools, i.e. high-resolution core and valence level photoemission and angle-scanned and energy-scanned photoelectron diffraction. The comparison between experimental data and density functional theoretical calculations indicates that the Au atoms landing on the oxide film are rather...
The growth mode and electronic structure of Au nano-clusters grown on NiO and TiO2 were analyzed by ...
The preparation and characterization of fully oxidized TiO2 ultrathin films obtained by reactive dep...
Oxide ultra-thin film surfaces have properties and structures that are significantly different from ...
We present an in-depth investigation of Au nanoparticles self-assembled on a zigzag-like TiOx/Pt(111...
We present a detailed experimental and theoretical investigation of the ultrathin titania z'-TiOx/Pt...
The structure of well-ordered reduced TiOx nanolayers (NLs) on Pt(111), prepared by reactive evapora...
Ultrathin ordered films of TiOx (x~1) on Pt(111) has been investigated by scanning tunneling microsc...
The adsorption of Au and Pd atoms on two nanostructured titania monolayers grown on the Pt(111) surf...
Ultrathin ordered films of TiOx (x 1) on Pt(111) have been investigated by scanning tunneling micr...
We investigated the growth of titanium oxide two-dimensional (2D) nanostructures on Au(111), produce...
The essential role of O affinity in the directed assembly of size-selected Au and Fe nanoparticles (...
Ultrathin films of titanium oxide were grown on (22 × - √3)-reconstructed Au(111) surfaces by Ti eva...
The nucleation and growth of Au and Ag nanoparticles on rutile TiO 2(110)-(1 × 1) surfaces in differ...
The growth of titanium oxide nanoparticles on reconstructed Au(111) surfaces was investigated by sca...
TiOx clusters on atomically flat Au(111) films have been investigated by means of scanning tunneling...
The growth mode and electronic structure of Au nano-clusters grown on NiO and TiO2 were analyzed by ...
The preparation and characterization of fully oxidized TiO2 ultrathin films obtained by reactive dep...
Oxide ultra-thin film surfaces have properties and structures that are significantly different from ...
We present an in-depth investigation of Au nanoparticles self-assembled on a zigzag-like TiOx/Pt(111...
We present a detailed experimental and theoretical investigation of the ultrathin titania z'-TiOx/Pt...
The structure of well-ordered reduced TiOx nanolayers (NLs) on Pt(111), prepared by reactive evapora...
Ultrathin ordered films of TiOx (x~1) on Pt(111) has been investigated by scanning tunneling microsc...
The adsorption of Au and Pd atoms on two nanostructured titania monolayers grown on the Pt(111) surf...
Ultrathin ordered films of TiOx (x 1) on Pt(111) have been investigated by scanning tunneling micr...
We investigated the growth of titanium oxide two-dimensional (2D) nanostructures on Au(111), produce...
The essential role of O affinity in the directed assembly of size-selected Au and Fe nanoparticles (...
Ultrathin films of titanium oxide were grown on (22 × - √3)-reconstructed Au(111) surfaces by Ti eva...
The nucleation and growth of Au and Ag nanoparticles on rutile TiO 2(110)-(1 × 1) surfaces in differ...
The growth of titanium oxide nanoparticles on reconstructed Au(111) surfaces was investigated by sca...
TiOx clusters on atomically flat Au(111) films have been investigated by means of scanning tunneling...
The growth mode and electronic structure of Au nano-clusters grown on NiO and TiO2 were analyzed by ...
The preparation and characterization of fully oxidized TiO2 ultrathin films obtained by reactive dep...
Oxide ultra-thin film surfaces have properties and structures that are significantly different from ...